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Harvesting Cu-67 from the Collection of a Secondary Beam Cocktail at the National Superconducting Cyclotron Laboratory

机译:在国家超导回旋加速器实验室收集二次束鸡尾酒中收获Cu-67

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Isotope harvesting is a promising new method to obtain isotopes for which there is no reliable continuous supply at present. To determine the possibility of obtaining radiochemically pure radioisotopes from an aqueous beam dump at a heavy-ion fragmentation facility, preliminary experiments were performed to chemically extract a copper isotope from a large mixture of projectile fragmentation products in an aqueous medium. In this work a 93 MeV/u secondary beam cocktail was collected in an aqueous beam stop at the National Superconducting Cyclotron Laboratory (NSCL) located on the Michigan State University (MSU) campus. The beam cocktail consisted of similar to 2.9% Cu-67 in a large mixture of co-produced isotopes ranging in atomic number from similar to 19 to 34. The chemical extraction of 67Cu was achieved via a two-step process: primary extraction using a divalent metal chelation disk followed by anion-exchange chromatography. A significant fraction (74 +/- 4%) of the 67Cu collected in the aqueous beam stop was recovered with >99% radiochemical purity. To illustrate the utility of this product, the purified 67Cu material was then used to radiolabel an anti-EGFR antibody, Panitumumab, and injected into mice bearing colon cancer xenografts. The tumor uptake at 5 days postinjection was found to be 12.5 +/- 0.7% which was in very good agreement with previously reported studies with this radiolabeled antibody. The present results demonstrate that harvesting isotopes from a heavy-ion fragmentation facility could be a promising new method for obtaining high-quality isotopes that are not currently available by traditional methods.
机译:同位素收获是一种获得同位素的有前途的新方法,目前尚无可靠的连续供应方法。为了确定在重离子裂解设施中从含水电子束收集器中获得放射化学纯的放射性同位素的可能性,进行了初步实验,从含水介质中的大量射弹裂解产物混合物中化学提取铜同位素。在这项工作中,在位于密歇根州立大学(MSU)校园的国家超导回旋加速器实验室(NSCL)的水束停止器中收集了93 MeV / u的二次束鸡尾酒。束状混合物由大量的共同产生的同位素组成,其原子数从相似的19到34,混合物中含有约2.9%的Cu-67。67Cu的化学提取通过两步过程完成:二价金属螯合盘,然后进行阴离子交换色谱。以> 99%的放射化学纯度回收了在水束停止器中收集的67Cu的很大一部分(74 +/- 4%)。为了说明该产品的实用性,然后将纯化的67Cu材料用于放射性标记抗EGFR抗体Panitumumab,并注射入带有结肠癌异种移植物的小鼠中。发现注射后5天的肿瘤摄取为12.5 +/- 0.7%,这与先前报道的对该放射性标记抗体的研究非常吻合。目前的结果表明,从重离子裂解设施中收集同位素可能是一种有前途的新方法,可用于获得传统方法目前无法获得的高质量同位素。

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